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121.
Single blastomeres from four- and eight-cell mouse embryos were fused into the enucleated halves of two-cell embryos, and the ability of these reconstituted embryos to develop in vitro and in vivo was examined. The proportion of these reconstituted embryos developing to blastocysts was 74% (60/81) when four-cell embryo blastomeres were used as nuclei donors and 31% (57/182) when eight-cell embryo blastomeres were used. Eight complete sets of the quadruplet-reconstituted embryos developed to blastocysts, and five live young (9%, 5/57) were obtained after transfer; however, none of the live young were clones. Although when using blastomeres from eight-cell embryos no complete set of eight developed to blastocysts, sextuplets were obtained. The blastocysts, however, failed to produce live young after transfer. In assessing the outgrowths, it was found that 43% of those derived from reconstituted embryos using blastomeres from four-cell embryos had an inner cell mass (ICM); however, outgrowths derived from reconstituted embryos using blastomeres from eight-cell embryos lacked an ICM. These results suggest that the genomes of four- and eight-cell nuclei introduced into the enucleated halves of two-cell embryos are reversed to support the development of the reconstituted embryo. 相似文献
122.
Our objective was to examine the ability of nucleate and anucleate fragments of artificially activated mouse eggs to transform sperm nucleus into male pronucleus. To this end, zona-free oocytes in metaphase II were activated by ethanol and bisected into halves (one with the spindle, the other anucleate) either within 10 to 20 min (series A) or 3 or 5 hr later (series B). In series A, the fragments were inseminated 3,5, and 8 h after activation, and in series B. 3 and 5 h after activation. Both nucleate and anucleate fragments lose the capability of transforming sperm nucleus into fully formed pronucleus sometime between 3 and 5 h after activation. In 8 h old parthenogenetic fragments, the majority of sperm nuclei remain unchanged or begin decondensation but never reach the stage of an early pronucleus. In over 1/3 of anucleate fragments of this age group, sperm nuclei develop defectively: chromatin decondenses inside the persisting nuclear envelope. In other experimental groups, the incidence of these abnormal sperm nuclei varies between 0 and 10%. In general, the anuclcate fragments retain the capability to transform sperm nuclei (fully or partially) longer than their nuclear counterparts. This difference may be accounted for by a different level of substances required for pronuclcar growth (extrachromosomal constituents of the germinal vesicle and nuclear lamins): high and constant in the cytoplasm of anucleate egg halves and low and progressively decreasing in the nucleate halves because of their putative uptake by the female pronucleus. However, the cytoplasmic factors responsible for the initial stages of transformation (nuclear envelope breakdown, chromatin decondensation) become eventually inactivated both in the presence and in the absence of a female pronucleus. 相似文献
123.
Katrin Engelmann Peter Friedl 《In vitro cellular & developmental biology. Plant》1989,25(11):1065-1072
Summary Long-term cultivation of human corneal endothelial cells (HCEC) was optimized with respect to different components of the
culture system: 25 different nutrient media, different sera, 6 mitogens and various substrates were tested in their ability
to influence clonal growth and morphology of HCEC. F99, a 1∶1 mixture of the two media M199 and Ham’s F12, was the most effective
basal medium in promoting clonal growth of HCEC. Among various sera, human serum and fetal bovine serum showed optimal growth
promoting activities in combination with F99, whereas newborn bovine serum (NBS) was by far superior for the development of
a typically corneal endothelial morphology. Crude fibroblast growth factor (FGF), or alternatively endothelial cell growth
supplement, was absolutely essential for clonal growth of HCEC at low serum concentrations, for example 5% NBS. Formation
of a monolayer with a morphology similar to corneal endothelium in vivo was observed only on culture dishes coated with basal
membrane components such as collagen type IV, laminin, or fibronectin. The most pronounced effect on morphologic appearance
was obtained by culturing the cells on the extracellular matrix (ECM) produced by bovine corneal endothelial cells. Moreover,
ECM could substitute for crude FGF in clonal growth assays. 相似文献
124.
A method is presented to study dynamics of plants that cannot be separated into individuals such as many grassland, salt marsh and tundra species. A virtual population is created by using a permanent transect line through the vegetation and individuals are defined as the branch segments distal to the intercept with the transect line. Addition and loss of individuals together with growth or shrinkage form the basis for constructing a size-structured transition matrix. A discrete-event simulation demonstrates that: 1) a virtual population of individuals grows at the same rate as the parent population; and, 2) size-structured transition matrices for a virtual population and parent vegetation have similar dominant and subdominant eigenvalues so a virtual population can be used to describe the dynamics of a parent vegetation.Dwarf birch, Betula nana L., was studied in the northern foothills of the Brooks Range, Alaska, by using photography to record branch intercepts along permanent transect lines. The distal branch segments constitute a virtual population of the parent vegetation. Transects were photographed in 1985 and again in 1986 and changes of branch segments were used to construct two transition matrices for shrubs with and without elevated fertilizer treatment. Analysis of the virtual populations suggests that although Betula nana may show increased branch growth with increased fertilizer, in the long run this shrub may decline in the tundra in response to such treatment. 相似文献
125.
János Podani 《Plant Ecology》1989,83(1-2):111-128
The methodology of comparing the results of multivariate community studies (resemblance matrices, ordinations, hierarchical and nonhierarchical classifications) is reviewed from two viewpoints: basic strategy and measure employed. The basic strategy is determined by 7 choices concerning the type of results, consensus methods or resemblance measures, hypothesis testing or exploratory analysis, lack or presence of reference basis, data set congruence or algorithmic effects, number of factors responsible for differences among results, and the number of properties considered in the comparison. Included is a brief summary of methods applicable to vegetation studies. Examples from a grassland survey demonstrate the utility of comparisons in evaluating the effects of plot size, data type, standardization, taxonomic level and number of species on classifications and ordinations.Abbreviations OUC =
Operational Unit of Comparison
- PCA =
Principal Components Analysis
- PCoA =
Principal Coordinates Analysis
- SSA =
Incremental Sum of Squares Agglomeration 相似文献
126.
Pathogenicity ofHeliothis nuclear polyhedrosis virus (HSNPV) to the corn earworm,Heliothis armigera, was studied using 3 different inoculative methods. The LD50 values of 4th-instar larvae inoculated with corn-fed, diet-fed and inoculum-imbiding method were 1.85×106, 2.55×105 and 1,22×103 PIBs/larva, respectively. The inoculum-imbiding is more sensitive and convenient for inoculatingH. armigera with HSNPV. The HSNPV product, Elcar®, was highly pathogenic toH. armigera, the LD50 values of 2nd-, 3rd- and 4th-instar larvae being 27, 83 and 1,221 PIBs/larva, respectively, as measured by the inoculum-imbiding method. The mortality of 4th-instar larvae caused by HSNPV was increased, but the incubation period was shortened with higher incubation temperatures. However, the high temperature at 35°C caused a lower mortality, and a prolongation of the median lethal time (LT50). Stability and persistence of HSNPV preparations were better in January–February and April–May than in June–July and October–November periods when sprayed on corn silks under field conditions. The HSNPV was inactivated by weak alkaline dew (pH 8.1) collected from soybean leaves, but it remained active on those from corn, tomato and asparagus with pH 7.2–7.3. The artificial heavy rainfall of 242 mm/h for 30 min did not wash off HSNPV preparations sprayed on the corn silks. 相似文献
127.
128.
Tsuneyoshi Kuroiwa 《Journal of plant research》1989,102(2):291-329
It has been established that organelles, such as mitochondria and plastids, contain organelle-specific DNA and arise from
the division of pre-existing organelles (e.g., Possingham and Lawrence, 1983). We propose that organelle DNAs, such as mitochondrial
DNA and plastid DNA are not naked in organellesin situ but are organized in each case to form an “organelle nucleus” with basic proteins (Kuroiwa, 1982). The concept of organelle
nuclei has changed our ideas about the division of organelles. Thus, the process of organelle division must be composed of
two main events: division of the organelle nucleus and organellekinesis (division of the other components of the mitochondrion
or plastid). The latter term has been adopted as an appropriate analogue of cytokinesis.
We were the first to identify the plastid-dividing ring (PD-ring), which is located in the cytoplasm close to the outer envelope
membrane at the constricted isthmus of dividing chloroplasts in the red algaCyanidium caldirum. The PD-ring is about 60 nm in width and 25 nm in thickness, and is a circular bundle of actin-like, fine filaments, each
about 4–5 nm in diameter. Since cytochalasin B, an inhibitor of polymerization of actin filaments, inhibits the formation
of the PD-ring and, thus, prevents subsequent division of chloroplasts, the PD-ring is thought to be a structure that is essential
for the division of plastids (plastidkinesis).
The behavior of the PD-ring during a cycle of chloroplast division can be classified into the following four stages on the
basis of morphological and temporal differences. The chloroplast growth stage: the small, spherical chloroplast increases
in volume and becomes a football-like structure, while the PD-ring from the previous division disappears. Formation of the
PD-ring: the somewhat electron-dense body (see below) is fragmented into many, somewhat electron-dense granules, which are
aligned along the equatorial region of the chloroplast and fine filaments are formed from the somewhat electron-dense granules
in the equatorial region. The fine filaments of the PD-ring align themselves according to the longest axis of their overall
domain, i.e., circumferentially. Contraction stage: a bundle of fine filaments begins to contract and generates a deep furrow.
Conversion stage: after chloroplast division, the remnants of the PD-ring are converted into somewhat electron-dense bodies.
Similar events occur during the second cycle of chloroplast division. Since similar structures are observed extensively in
the plastids of algae, moss and higher plants, the PD-ring appears to be an essential structure for the division of plastids
in plants. 相似文献
129.
Bradley C. Hyman 《Journal of nematology》1990,22(1):24-30
Genetic variation within nuclear and mitochondrial DNA of Meloidogyne species and host races has been evaluated for the development of root-knot nematode molecular diagnostics. This review summarizes the distinctive features of several useful DNA-based assays for plant-parasitic nematodes, focusing upon the direct application of these procedures for Meloidogyne detection, identification, and systematics. 相似文献
130.
Andreas Faissner Jan Kruse Klaus Kühn Melitta Schachner 《Journal of neurochemistry》1990,54(3):1004-1015
The J1 glycoproteins can be obtained in multiple forms in the soluble fraction of developing and adult mouse brain tissue. They are recovered as two forms of apparent molecular weights of 160,000 and 180,000 (J1-160) from adult mouse brain and as forms of apparent molecular weights of 200,000 and 220,000 (J1-220) from developing brain. J1-160 and J1-220 share common epitopes but are considered as separate entities, with J1-220 being immunochemically closely related if not identical to tenascin. Based on the observation that J1 immunoreactivity appears on basement membrane and interstitial collagens after denervation of the neuromuscular junction in adult rodents, we became interested in investigating the binding properties of J1 glycoproteins to extracellular matrix constituents in vitro. Both J1-160 and J1-220 bound to collagens type I-VI and IX but not to laminin, fibronectin, bovine serum albumin, or gelatin under hypotonic buffer conditions. Under isotonic buffer conditions, J1-220 bound to all collagen types, whereas J1-160 bound only to collagen types V and VI with values that could be examined by Scatchard analysis. Binding of J1-220 to collagens displayed two binding constants (KD) between 1.5 and 4.4 X 10(-9) and 1.8 and 5.5 X 10(-8) M, respectively, under hypotonic buffer conditions and a single KD of 2.1-8.0 X 10(-8) M under isotonic buffer conditions. Binding of J1-160 to collagens had an apparent KD of 1.9-8.0 X 10(-9) M under hypotonic buffer conditions. Under isotonic buffer conditions, binding constants of J1-160 to collagen types V and VI were approximately 2 X 10(-8) M. Binding of J1-220 to collagen type I could be inhibited by J1-220, J1-160, and collagen type VI but not by fibronectin or gelatin. Conversely, binding of J1-160 was inhibited by J1-220, J1-160, and collagen type VI (in order of decreasing efficacy of competition). J1-160 and J1-220 were retained on a heparin-agarose column and eluted in a salt gradient at approximately 0.5 M NaCl. The formation of the J1-heparin complexes was inhibited 100-fold more efficiently by heparin than by chondroitin sulfate. These experiments show that J1 glycoproteins resemble in many respects the extracellular matrix constituents fibronectin, laminin, vitronectin, and von Willebrand factor. 相似文献